Glasses leg and intelligent glasses
By optimizing the bracket and component design of the glasses legs, the problem of uncomfortable wearing of smart glasses is solved, achieving higher wearing comfort and privacy protection, and reducing the volume and quality of glasses legs.
Patent Information
- Application Number
- CN202510301016.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2025-07-25
AI Technical Summary
The structural design of existing smart glasses makes wearing uncomfortable, especially the privacy concerns of the camera device and the size of the glasses is too large, which affects the wearing experience.
A glasses leg structure is designed, including a bracket, front end assembly and rear end assembly. The bracket is thinner than the front and rear end assembly. The inner side of the bracket and the rear end assembly are spaced apart. The inner side of the rear end assembly faces the head skin. Combined with a detachable camera device and a bone conduction sound device, the overall design of the glasses leg is optimized.
It improves wearing comfort, reduces the pressure between the glasses legs and the skin, protects privacy, reduces the overall quality and volume of the glasses legs, and enhances the stability and aesthetics of the wear.
Smart Images

Figure CN120370566A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glasses, and in particular to a temple and a smart glasses. Background Art
[0002] Glasses generally include temples and frames. The temples are used to rest on the ears to support the frame and keep the frame in front of the eyes. With the development of technology, more and more functions are integrated into glasses. For example, some smart glasses are equipped with a sound-emitting device and can realize the function of listening to music. Also, some smart glasses are provided with a camera device and can realize the function of taking pictures.
[0003] The more functions the glasses have, the more components they integrate, resulting in an increasing volume of the temples. If the structure of the temples is not set reasonably, it will affect the wearing comfort. For example, if the part of the temple in contact with the skin is too thin, it may press marks on the skin and affect the wearing comfort. If the overall temple is thick and large, it will also affect the wearing comfort.
[0004] In addition, for smart glasses with a camera device, the existence of the camera device may cause others to worry about privacy infringement.
[0005] Therefore, it is necessary to improve the existing technology to overcome the defects in the existing technology. Summary of the Invention
[0006] The purpose of the present invention is to provide a temple and a smart glasses to improve the wearing comfort.
[0007] To achieve the above-mentioned invention purpose, on the one hand, the present invention provides a temple, including:
[0008] A bracket, the bracket is in a long strip shape;
[0009] A front-end component, including a camera device; and,
[0010] A rear-end component, for wearing on the ear, the front-end component and the rear-end component are respectively connected to both ends of the bracket;
[0011] The bracket is thinner than the front-end component and the rear-end component, and the bracket is spaced from the inner side surface of the rear-end component. The inner side surface of the rear-end component faces the head skin when the temple is worn.
[0012] Further, the distance between the bracket and the inner side surface of the rear-end component is 2 mm to 5 mm.
[0013] Further, the width W1 of the bracket is less than at least two-thirds of the width W2 of the surfaces to which the front end component and the rear end component are connected, and the thickness B1 of the bracket is less than at least one-third of the thickness B2 of the surfaces to which the front end component and the rear end component are connected.
[0014] Further, the bracket is connected to the end face of the rear end component facing the front end component, and the bracket is centrally arranged in the width direction with respect to the end face or offset toward the inner side face away from the rear end component.
[0015] Further, the rear end component includes a rear end housing, the rear end housing includes a concave arc portion for contacting the human ear and a first portion and a second portion respectively located on both sides of the arc portion, and the bracket is connected to the first portion.
[0016] Further, the rear end component includes a sound generating device located in the first portion, a rear end battery located in the second portion, and a rear end circuit board electrically connected to the rear end battery and the sound generating device.
[0017] Further, the rear end circuit board is located between the sound generating device and the rear end battery and extends to both sides of the deepest concave point of the arc portion.
[0018] Further, the sound generating device is a bone conduction sound generating device, the first portion contacts the human skin to transmit vibration, or, an opening for the sound generating device to be exposed is provided in the first portion, and the sound generating device contacts the human skin through the opening to transmit vibration.
[0019] Further, the front end component includes a front end housing connected to the camera device, and a front end battery for powering the camera device is provided inside the front end housing; or,
[0020] The bracket is tubular, and the temple further includes a cable disposed inside the bracket, the cable is electrically connected to the rear end circuit board and the camera device, and the camera device is powered by the rear end battery.
[0021] In a second aspect, the present invention provides a smart glasses, including a frame and two temples as described in any one of the above, the two temples are respectively connected to both ends of the frame, and the front end component of the temple is rotatably connected to the frame.
[0022] Further, the temple and the frame are detachably connected.
[0023] Compared with the prior art, the present invention has the following beneficial effects: According to at least one embodiment of the present invention, the temple includes a front-end component, a rear-end component, and a strip-shaped bracket connected between the front-end component and the rear-end component. The bracket is thinner than the front-end component and the rear-end component, which can prevent the overall temple from being too thick and is beneficial to reducing the weight, thereby improving the wearing comfort. At the same time, the inner sides of the bracket and the rear-end component are spaced apart, which can reduce or even eliminate the extrusion force between the bracket and the skin, further improving the wearing comfort. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is a schematic diagram of the temple in some embodiments of the present invention.
[0025] Figure 2 is Figure 1 a schematic diagram of another viewing direction of the temple shown.
[0026] Figure 3 is Figure 1 a top view of the temple shown.
[0027] Figure 4 is a schematic diagram of the rear-end component in some embodiments of the present invention.
[0028] Figure 5 is an internal schematic diagram of the rear-end component in some embodiments of the present invention.
[0029] Figure 6 is a schematic diagram of the position of the sound generating device in some embodiments of the present invention.
[0030] Figure 7 is a schematic diagram of the position of the sound generating device in some embodiments of the present invention.
[0031] Figure 8 is a schematic diagram of the position of the sound generating device in some embodiments of the present invention.
[0032] Figure 9 is a schematic diagram of the position of the sound generating device in some embodiments of the present invention.
[0033] Figure 10 is a schematic diagram of the front-end component in some embodiments of the present invention.
[0034] Figure 11 is an internal schematic diagram of the front-end component in some embodiments of the present invention.
[0035] Figure 12 is a schematic diagram of the camera device in some embodiments of the present invention.
[0036] Figure 13 is a connection schematic diagram of the front-end component and the camera device in some embodiments of the present invention.
[0037] Figure 14 It is a schematic diagram of the connection between the front-end component and the imaging device in some embodiments of the present invention.
[0038] Figure 15 It is a schematic diagram of the connection between the front-end component and the imaging device in some embodiments of the present invention.
[0039] Figure 16 It is a schematic diagram of the imaging device in some embodiments of the present invention.
[0040] Figure 17 It is a schematic diagram of the connection between the front-end component and the imaging device in some embodiments of the present invention.
[0041] Figure 18 It is a schematic diagram of the connection between the front-end component and the imaging device in some embodiments of the present invention.
[0042] Figure 19 It is a schematic diagram of the front-end housing in some embodiments of the present invention.
[0043] Figure 20 It is a schematic diagram of the connection between the imaging device and the inner side surface of the front-end housing in some embodiments of the present invention.
[0044] Figure 21 It is a schematic diagram of the connection between the imaging device and the bottom surface of the front-end housing in some embodiments of the present invention.
[0045] Figure 22 It is a schematic diagram of the smart glasses in some embodiments of the present invention.
[0046] Figure 23 It is a schematic diagram of the smart glasses in some embodiments of the present invention. Detailed implementation manners
[0047] To make the above objects, features, and advantages of the present application more obvious and understandable, the following will describe the detailed implementation manners of the present application in conjunction with the accompanying drawings. It can be understood that the specific embodiments described herein are only used to explain the present application, rather than limiting the present application. Additionally, it should be noted that for the sake of convenience of description, only the parts related to the present application are shown in the drawings, rather than all the structures. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present application.
[0048] As used in this application, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but may optionally further include steps or units not listed, or may optionally further include other steps or units inherent to these processes, methods, products or devices.
[0049] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive of other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0050] As Figures 1 to 3 shown, the present invention provides a temple, comprising a bracket 1, a front-end component 2 and a rear-end component 3.
[0051] The front-end component 2 includes a camera device 20, and the camera device 20 is capable of taking pictures or videos.
[0052] The rear-end component 3 is for wearing on the ear and is clamped between the ear and the head skin. The front-end component 2 and the rear-end component 3 are respectively connected to both ends of the bracket 1. When worn, the rear-end component 3 is clamped between the ear and the head skin to fix the temple.
[0053] The bracket 1 is in a long strip shape. The bracket 1 is thinner than the front-end component 2 and the rear-end component 3, so that the overall temple has a three-section structure. The thinner bracket 1 can prevent the overall temple from being too thick and is beneficial to reducing the weight, thereby improving the wearing comfort. The bracket 1 can be made of a material with better elasticity, such as an alloy material, which can be deformed and provide a certain clamping force during wearing to ensure the wearing stability.
[0054] The length direction of the bracket 1 refers to the direction of the connection line of the centers of its two end parts. The width of the bracket 1 refers to the maximum dimension in the horizontal direction (left-right direction) of the cross-section of the bracket 1 when the bracket 1 is placed horizontally. The thickness of the bracket 1 refers to the maximum dimension in the height direction (up-down direction) of the cross-section when the bracket 1 is placed horizontally. The bracket 1 being thinner than the front-end component 2 and the rear-end component 3 means that its width dimension is smaller than the widths of the front-end component 2 and the rear-end component 3, and its thickness dimension is smaller than the thicknesses of the front-end component 2 and the rear-end component 3.
[0055] In some embodiments, there is a space between the inner side surface 30a of the bracket 1 and the rear-end component 3. The inner side surface 30a is the surface facing the head skin when the temple is worn, and at least part of this surface contacts the head skin. Since the bracket 1 is relatively thin and its width is smaller than the widths of the front-end component 2 and the rear-end component 3, there is a space between the bracket 1 and the inner side surface 30a. When the temple is worn on the head, the bracket 1 will not contact the head skin, or even if it contacts the skin, there will not be too much squeezing pressure, which can prevent discomfort caused by the relatively thin bracket 1 pressing on the facial skin and is conducive to avoiding leaving marks.
[0056] In some embodiments, referring to Figure 3 , Figure 4 and Figure 10 , the width W1 of the bracket 1 is less than at least two-thirds of the width W2 of the surface where the front-end component 2 and the rear-end component 3 are connected to it (that is, the width W1 is smaller than two-thirds of the width W2), and the thickness B1 of the bracket 1 is less than at least one-third of the thickness B2 of the surface where the front-end component 2 and the rear-end component 3 are connected to it (that is, the thickness B1 is smaller than one-third of the thickness B2), which can better prevent the bracket 1 from contacting the head skin. The surfaces of the front-end component 2 and the rear-end component 3 connected to the bracket 1 include transitional parts such as rounded corners or chamfers. Further optionally, the width W1 of the bracket 1 is less than at least one-half of the width W2 of the surface where the front-end component 2 and the rear-end component 3 are connected to it, and the thickness B1 of the bracket 1 is less than at least one-fourth of the thickness B2 of the surface where the front-end component 2 and the rear-end component 3 are connected to it to further ensure the effect.
[0057] In some embodiments, the distance D1 between the bracket 1 and the inner side surface 30a of the rear-end component 3 is 2 mm to 5 mm to more reliably prevent the bracket 1 from contacting the head skin when the temple is worn.
[0058] As Figure 3 shown, the bracket 1 is connected to the end face 30b of the rear-end component 3 facing the front-end component 2. Specifically, the rear-end component 3 includes a rear-end housing 30, and the end face 30b is provided on the rear-end housing 30. In some embodiments, the bracket 1 is centered relative to the end face 30b in the width direction. In some other embodiments, the bracket 1 is offset away from the inner side surface 30a of the rear-end component 3 in the width direction, which can make the distance between the bracket 1 and the inner side surface 30a larger and the width of the rear-end component 3 smaller.
[0059] For the convenience of wearing on the human head and improving the wearing comfort, referring to Figure 4, the rear housing 30 includes a concave arc portion 300 for contacting the top of the human ear. The arc portion 300 has a structure that is higher in the middle and lower at both ends, which can prevent the temple from moving back and forth and improve the wearing stability. Optionally, the width of the lower end of the arc portion 300 can be set to gradually increase from bottom to top to further improve the wearing comfort. The rear housing 30 also includes a first portion 301 and a second portion 302 on both sides of the arc portion 300. The bracket 1 is connected to the first portion 301. Therefore, the end face 30b of the rear housing 30 is also the end face of the first portion 301. The end of the first portion 301 connected to the bracket 1 is provided with a downwardly protruding convex portion 3011. The second portion 302 extends obliquely downward away from the bracket 1, which can make the center of gravity of the temple lower and further improve the wearing stability. In addition, the convex portion 3011 can increase the contact area with the skin and improve the wearing comfort.
[0060] In some embodiments, the rear end assembly 3 includes a sound generating device 31 located in the first portion 301, a rear end battery 32 located in the second portion 302, and a rear end circuit board 33 electrically connected to the rear end battery 32 and the sound generating device 31. The rear end battery 32 supplies power to the rear end circuit board 33 and the sound generating device 31. The rear end circuit board 33 is used to control the sound generating device 31 to generate sound, and it can be provided with supporting circuits such as chips, control circuits, and / or Bluetooth modules. The rear end circuit board 33 is located between the sound generating device 31 and the rear end battery 32 and extends to both sides of the deepest point of the arc portion 300 to increase its length so that it can accommodate sufficient electronic components.
[0061] The sound generating device 31 can be, for example, an air conduction sound generating device or a bone conduction sound generating device. When the sound generating device 31 is an air conduction sound generating device, optionally, a sound outlet hole (not shown in the figure) is provided at the bottom of the first portion 301 so that the sound propagates towards the ear canal. When the sound generating device 31 is a bone conduction sound generating device, the vibration direction of the bone conduction sound generating device points to the inner side face 30a of the rear end assembly 3 to more efficiently transmit the vibration.
[0062] Figure 5 and Figure 6 In the illustrated embodiment, the sound generating device 31 is a bone conduction sound generating device. The first portion 301 is provided with an opening 3010 for the sound generating device 31 to be exposed, and the vibration is transmitted by contacting the human skin through the sound generating device 31. Figure 6 In the illustrated embodiment, the outer surface 31a of the sound generating device 31 is flush with the inner side face 30a of the first portion 301. Optionally, referring to Figure 7 , the sound generating device 31 can also protrude outside the inner side face 30a to improve the tightness of the contact between the sound generating device 31 and the human skin. In other embodiments, referring to Figure 8The bone conduction sound generating device may also be completely located inside the first part 301. When the bone conduction sound generating device vibrates, it will drive the first part 301 to vibrate, and the vibration is transmitted through the contact between the inner side surface 30a of the first part 301 and the human skin. Figure 9 The first portion 301 is partially protruding to improve the reliability of contact with human skin.
[0063] It is understandable that when the sound-generating device 31 is a bone conduction sound-generating device, the provision of the convex portion 3011 can not only increase the accommodation space, but also increase the contact area with the skin, thereby improving the vibration transmission effect. In addition, the vibration of the bone conduction sound-generating device will drive the bracket 1 to vibrate, therefore, setting the bracket 1 to not contact the skin or to reduce the contact force with the skin will better ensure the listening effect and wearing comfort.
[0064] like Figure 10 As shown, the front end assembly 2 includes a front end housing 21. It can be understood that the end surface of the front end assembly 2 connected to the bracket 1 is the end surface of the front end housing 21. The camera device 20 is connected to the front end housing 21.
[0065] In some embodiments, a front battery (not shown) for powering the camera device 20 is disposed inside the front housing 21, and the camera device 20 can directly use the power of the front battery to work. In other embodiments, the camera device 20 uses the power of the rear battery 32 to work, the bracket 1 is tubular, and the temple of the glasses also includes a cable (not shown) disposed in the bracket 1, the cable is electrically connected to the rear circuit board 33 and the camera device 20, and the camera device 20 is powered by the rear battery 32. In this embodiment, the camera device 20 can also be controlled by the rear circuit board 33.
[0066] The camera device 20 may be disposed inside the front end housing 21, or may be disposed outside the front end housing 21. The camera device 20 may be fixedly connected to the front end housing 21 (non-detachable), or may be detachably connected to the front end housing 21.
[0067] In some embodiments, the camera device 20 is disposed outside the front housing 21 and is detachably connected to the front housing 21. When the camera device 20 is not needed, the camera device 20 can be conveniently removed, and when the camera device 20 is needed, the camera device 20 can be installed. In this way, the camera device 20 can be removed in public places to protect the privacy of others, so that others will not be disgusted by the user carrying the camera device 20, and the suspicion of secretly taking pictures can be avoided. At the same time, removing the camera device 20 in the occasion where the camera device 20 is not needed can reduce the weight of the eye leg and improve the wearing comfort.
[0068] like Figures 11 to 13As shown in the figure, a front-end circuit board 22 and at least two first conductive members 23 electrically connected to the front-end circuit board 22 are provided inside the front-end housing 21. The front-end circuit board 22 can be provided with circuits matching the imaging device 20, such as a control chip and / or a Bluetooth module, etc. At least a part of the first conductive member 23 is exposed outside the front-end housing 21. The imaging device 20 includes a second conductive member 200 for docking with the first conductive member 23. Each first conductive member 23 is correspondingly provided with a second conductive member 200 to transmit signals and supply power. When the imaging device 20 is installed on the front-end housing 21, its second conductive member 200 contacts the corresponding first conductive member 23, thereby establishing an electrical connection. The first conductive member 23 and the second conductive member 200 can be, for example, copper posts, copper pads or PIN pins, etc. Optionally, at least one of the first conductive member 23 and the second conductive member 200 is a PIN pin, and the first conductive member 23 and the second conductive member 200 are elastically abutted.
[0069] When a front-end battery is provided inside the front-end housing 21, the front-end battery can be connected to the front-end circuit board 22 to supply power to both the front-end circuit board 22 and the imaging device 20 simultaneously. When no front-end battery is provided inside the front-end housing 21, the rear-end battery 32 is connected to the front-end circuit board 22 to supply power to both the front-end circuit board 22 and the imaging device 20 simultaneously. In some embodiments, both the front-end housing 21 and the rear-end housing 32 are provided with batteries (i.e., a front-end battery and a rear-end battery 32 are provided respectively). At this time, the imaging device 20 can selectively use the power of the front-end battery or the rear-end battery. When the power of one of the batteries is low, the power of the other battery can be used. For example, the imaging device 20 can first use the power of the front-end battery, and when the power of the front-end battery is insufficient, it can use the power of the rear-end battery 32.
[0070] It can be understood that since the imaging device 20 operates using the power of the battery inside the front-end component 2 and / or the rear-end component 3, the imaging device 20 does not need to have its own battery, and can be further miniaturized, thereby reducing the foreign body sensation after the imaging device 20 is installed on the temple, and improving the wearing comfort.
[0071] Optionally, only the rear-end housing 30 is provided with a battery, which can increase the mass of the rear end of the temple and reduce the mass of the front end, thereby reducing the pressure on the bridge of the nose after wearing the smart glasses.
[0072] The front-end housing 21 includes a front end face 21a and a rear end face 21b arranged oppositely and an outer peripheral face located between the front end face 21a and the rear end face 21b. Among them, the rear end face 21b is connected to the bracket 1. In some embodiments, the imaging device 20 and the front-end component 2 are magnetically connected, and the imaging device 20 is arranged on the outer peripheral face, which can facilitate the installation or removal of the imaging device 20.
[0073] In some embodiments, refer toFigure 11 and Figure 13 , a concave positioning groove 210 is provided on the outer peripheral surface of the front housing 21. The entire imaging device 20 is disposed within the positioning groove 210 and is limited by the positioning groove 210. When installing the imaging device 20, it is only necessary to make the lens 202 of the imaging device 20 face forward and place it into the positioning groove 210, so that the first conductive member 200 and the first conductive member 23 can be reliably aligned, improving the convenience of installation.
[0074] Optionally, the positioning groove 210 is tightly fitted with the imaging device 20, which can improve the connection force between the imaging device 20 and the front housing 21, prevent the imaging device 20 from accidentally falling off the front housing 21, and at the same time ensure the reliability of the contact between the first conductive member 23 and the second conductive member 200.
[0075] Both the imaging device 20 and the front housing 21 are provided with magnetic attraction members. One of the magnetic attraction members of the two is a magnet, and the other is a part that can be attracted by the magnet. For example, it can be made of a magnetically conductive material (such as iron), or it can be another magnet to achieve magnetic attraction between the two. In some embodiments, as Figure 13 shown, the front-end assembly 2 includes a first magnetic attraction member 24 disposed within the front housing 21 and corresponding to the positioning groove 210. Optionally, the first magnetic attraction member 24 is disposed opposite to the bottom surface 2100 of the positioning groove 210 and is not exposed outside the bottom surface 2100. A second magnetic attraction member 25 is disposed within the housing of the imaging device 20. The polarities of the outer-facing magnetic poles of the first magnetic attraction member 24 and the second magnetic attraction member 25 are opposite, so that the two magnetic attraction members can attract each other when approaching. Optionally, the second magnetic attraction member 25 is also not exposed outside the outer surface of the imaging device 20. Optionally, both the first magnetic attraction member 24 and the second magnetic attraction member 25 are magnets. By the way of mutual attraction of the two magnets, the magnetic attraction force can be increased, making the connection between the imaging device 20 and the front housing 21 more firm.
[0076] In some embodiments, the number of both the first magnetic attraction member 24 and the second magnetic attraction member 25 is one. The first magnetic attraction member 24 is located between the two first conductive members 23. Further optionally, it is located at the middle position between the two first conductive members 23, so that the forces on the two first conductive members 23 are more balanced, which is beneficial to ensuring the reliability of electrical contact. In some other embodiments, as Figure 14 shown, the number of both the first magnetic attraction member 24 and the second magnetic attraction member 25 is two, and the two first magnetic attraction members 24 are respectively located on both sides of the two first conductive members 23. Optionally, when the number of both the first magnetic attraction member 24 and the second magnetic attraction member 25 is two, the polarities of the outer-facing magnetic poles of the two magnetic attraction members are opposite. In other embodiments, the number of the first magnetic attraction member 24 and the second magnetic attraction member 25 can also be more.
[0077] In some embodiments, one of the imaging device 20 and the front housing 21 is provided with a guiding post 201, and the other is provided with a guiding groove 211 adapted to the guiding post 201. The detachable connection between the imaging device 20 and the front housing 21 is realized through the mating of the guiding groove 211 and the guiding post 201. Figures 15 to 17 In the illustrated embodiment, the imaging device 20 is provided with a guiding post 201, and the front housing 21 is provided with a guiding groove 211 adapted to the guiding post 201, which can reduce the mass of the front housing 21 and make the wearing of the temple more comfortable when the imaging device 20 is not required.
[0078] The guiding groove 211 is configured such that the width of at least a part of the guiding groove 211 is greater than the width at the opening of the guiding groove 211. In this way, the guiding post 201 will not slide out of the opening of the guiding groove 211 in a direction perpendicular to the extending direction of the guiding groove 211, and can play a role in radial limiting. In the illustrated embodiment, the guiding post 201 is cylindrical and its cross-section is generally circular but not a complete circle. The cross-section of the guiding groove 211 is adapted to the cross-section of the guiding post 201. The cross-section of the guiding post 201 is larger than a semi-circle so that a groove 2010 can be formed between the guiding post 201 and the surface where the guiding post 201 is provided. When the solid part outside the guiding groove 211 is embedded in the groove 2010, the guiding post 201 can be prevented from radially detaching from the guiding groove 211. Optionally, the central angle α of the guiding post 201 is greater than 240° and less than 300° so that the guiding post 201 and the guiding groove 211 can be reliably connected.
[0079] Optionally, the two first conductive members 23 are respectively located on both sides of the guiding groove 211. Further optionally, they are located at the middle position between the two guiding grooves 211 so that the forces on the two first conductive members 23 are more balanced, which is beneficial to ensuring the reliability of electrical contact.
[0080] It can be understood that the number of the guiding posts 201 is not limited to one, and can also be two or more. The two or more guiding posts 201 are arranged in parallel, and the number of the guiding grooves 211 corresponds to that of the guiding posts 201.
[0081] Similarly, the imaging device 20 and the front housing 21 can be magnetically attracted. For example, one of the imaging device 20 and the front housing 21 is provided with a magnet, and the other is provided with a part that can be adsorbed by the magnet to realize the magnetic attraction between the two. The structure of the magnetic attraction connection can refer to the above text. Optionally, refer to Figure 18, both the imaging device 20 and the front housing 21 are provided with magnetic members. Optionally, the number of the first magnetic members 24 and the second magnetic members 25 is two each. The two first magnetic members 24 are respectively located on both sides of the guiding groove 211. Further optionally, the two first magnetic members 24 are symmetrically arranged on both sides of the guiding groove 211. Optionally, the two first magnetic members 24 are respectively located on both sides of the two first conductive members 23.
[0082] In some embodiments, the guiding groove 211 is a blind groove, one end of which penetrates the front housing 21 and the other end does not penetrate the front housing 21 ( Figure 19 In the illustrated embodiment, the guiding groove 211 penetrates the top surface 21e of the front housing 21 and the other end does not penetrate the bottom surface 21f of the front housing 21). When the guiding post 201 moves to the bottom of the guiding groove 211, the first conductive member 23 contacts the second conductive member 200. Through the limitation of the guiding post 201 and the bottom of the guiding groove 211, the positioning of the first conductive member 23 and the second conductive member 200 is realized, which is beneficial to more accurate positioning of the imaging device 20 after being installed on the front housing 21.
[0083] In some embodiments, as Figure 20 shown, the front housing 21 is generally in a cuboid shape, and its outer peripheral surface includes four surfaces, namely the outer side surface 21c, the inner side surface 21d, the top surface 21e and the bottom surface 21f. The imaging device 20 can be arranged on the outer side surface 21c, the inner side surface 21d, the top surface 21e or the bottom surface 21f. For example, Figure 1 , Figure 20 and Figure 21 respectively show schematic diagrams of the imaging device 20 located on the top surface 21e, the inner side surface 21d and the bottom surface 21f of the front housing 21.
[0084] It can be understood that referring to Figure 22 , the glasses include temple arms 51 and a frame 50. When the imaging device 20 is arranged on the inner side surface 21d, the frame 50 is located in front of the imaging device 20. Optionally, the frame 50 is provided with an avoidance hole 500 corresponding to the lens 202 of the imaging device 20, so that the imaging device 20 can capture the picture in front of the frame 50. When the imaging device 20 is arranged on the inner side surface 21d, the imaging device 20 can obtain better protection.
[0085] When the imaging device 20 is arranged on the outer side surface 21c, the top surface 21e or the bottom surface 21f, the imaging device 20 can be disassembled and assembled more conveniently.
[0086] It can be understood that both the front housing 21 and the rear housing 30 can be formed by connecting two or more parts. For example, it can include a housing with a cavity and a cover plate, and the cover plate seals the open end of the housing with the cavity, thereby forming a relatively enclosed accommodation space.
[0087] The temple can also be provided with other components, for example, a microphone can be provided to achieve call or voice interaction, and control devices such as buttons can be provided to control the sound-emitting device or the imaging device 20, etc.
[0088] The present invention also provides an intelligent glasses, which includes a spectacle frame 50 and the temple 51 as described above. The front-end assembly 2 of the temple 51 is rotatably connected to the spectacle frame 50. As Figure 23 shown, the temple 51 and the spectacle frame 50 are connected by a hinge assembly 52. Optionally, the temple 51 and the spectacle frame 50 are detachably connected. The temple 51 can be easily detached from the spectacle frame 50 and assembled to different spectacle frames 50 to improve the versatility of the temple 51.
[0089] In some embodiments, the intelligent glasses include two temples as described in the above embodiments. Both of the two temples can include the imaging device 20 (such as Figure 22 the embodiment shown), or only one of them can include the imaging device 20 (such as Figure 23 the embodiment shown). Both of the two temples can also include the sound-emitting device 31, or only one of them can include the sound-emitting device 31. For example, in the two temples, one temple can include the imaging device 20 and not include the sound-emitting device 31, and the other can include the sound-emitting device 31 and not include the imaging device 20. Another example is that both of the two temples can include the sound-emitting device 31 and the imaging device 20. Another example is that both of the two temples include the sound-emitting device 31, but one of them does not include the imaging device 20 and the other includes the imaging device 20. Another example is that both of the two temples include the sound-emitting device 31 and neither of them includes the imaging device 20. Another example is that both of the two temples include the imaging device 20 and neither of them includes the sound-emitting device 31.
[0090] In some embodiments, the intelligent glasses include one temple as described in the above embodiments (hereinafter referred to as the intelligent temple) and one ordinary temple. The ordinary temple refers to a temple that does not contain the imaging device 20, the sound-emitting device 31, and other electronic components, which can reduce the cost. To improve the wearing comfort, optionally, the intelligent temple and the ordinary temple are shaped in imitation of each other to make the whole glasses more beautiful. Further optionally, the mass of the intelligent temple is close to or the same as that of the ordinary temple, so that the forces on the two ears are more balanced when wearing. For example, the difference in mass between the intelligent temple and the ordinary temple does not exceed 5% of the sum of their masses. Further optionally, the masses of the respective parts (the front-end assembly 2, the bracket 1, and the rear-end assembly 3) of the intelligent temple and the ordinary temple are close to or the same. For example, the difference in mass between the respective parts of the intelligent temple and the ordinary temple does not exceed 5% of the sum of their masses to further improve the wearing comfort.
[0091] It should be noted that, without conflict, the embodiments in this text can be combined with each other to obtain more implementation schemes.
[0092] The above are only specific implementation manners of the present invention, and any improvements made on the premise of the conception of the present invention are regarded as the protection scope of the present invention.
Claims
1. A temple, characterized in that, Comprising: A bracket (1), the bracket (1) being strip-shaped; A front-end assembly (2), including a camera device (20); And, A rear-end assembly (3) for wearing on the ear, the front-end assembly (2) and the rear-end assembly (3) being respectively connected to two ends of the bracket (1); The bracket (1) is thinner than the front-end assembly (2) and the rear-end assembly (3), and the bracket (1) is spaced from the inner side surface (30a) of the rear-end assembly (3), and the inner side surface (30a) of the rear-end assembly (3) faces the head skin when the temple is worn.
2. The temple according to claim 1, characterized in that, The distance between the bracket (1) and the inner side surface (30a) of the rear-end assembly (3) is 2 mm to 5 mm.
3. The temple according to claim 2, wherein The width W1 of the bracket (1) is less than at least two-thirds of the width W2 of the surface to which the front-end assembly (2) and the rear-end assembly (3) are connected, and the thickness B1 of the bracket (1) is less than at least one-third of the thickness B2 of the surface to which the front-end assembly (2) and the rear-end assembly (3) are connected.
4. The temple according to claim 1, characterized in that, The bracket (1) is connected to the end surface of the rear-end assembly (3) facing the front-end assembly (2), and the bracket (1) is centered in the width direction with respect to the end surface or offset away from the inner side surface (30a) of the rear-end assembly (3).
5. The temple according to any one of claims 1 to 4, characterized in that, The rear-end assembly (3) includes a rear-end housing (30), the rear-end housing (30) including a concave arc portion (300) for contacting the human ear and a first portion (301) and a second portion (302) respectively located on both sides of the arc portion (300), and the bracket (1) is connected to the first portion (301).
6. The temple according to claim 5, characterized in that, The rear-end assembly (3) includes a sound generating device (31) located in the first portion (301), a rear-end battery (32) located in the second portion (302), and a rear-end circuit board (33) electrically connected to the rear-end battery (32) and the sound generating device (31).
7. The temple according to claim 6, characterized in that The rear-end circuit board (33) is located between the sound generating device (31) and the rear-end battery (32) and extends to both sides of the deepest point of the arc portion (300).
8. The temple according to claim 6, characterized in that, The sound generating device (31) is a bone conduction sound generating device, and the first portion (301) contacts the human skin to transmit vibration, or an opening (3010) for exposing the sound generating device (31) is provided in the first portion (301), and the sound generating device (31) contacts the human skin to transmit vibration.
9. The temple according to claim 6, wherein The front-end assembly (2) includes a front-end housing (21) connected to the camera device (20), and a front-end battery for powering the camera device (20) is provided inside the front-end housing (21); or, The bracket (1) is tubular, and the temple further includes a cable (4) provided in the bracket (1), the cable (4) being electrically connected to the rear-end circuit board (33) and the camera device (20), and the camera device (20) is powered by the rear-end battery (32).
10. An intelligent glasses, characterized in that, It includes a spectacle frame (50) and two temple pieces (51) as described in any one of claims 1 to 9. The two temple pieces (51) are respectively connected to both ends of the spectacle frame (50), and the front-end assembly (2) of the temple piece (51) is rotatably connected to the spectacle frame (50).
11. The smart glasses according to claim 10, characterized in that, The temple piece (51) and the spectacle frame (50) are detachably connected.